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基于微阵列的产前诊断用于识别胎儿染色体异常。

Microarray-based prenatal diagnosis for the identification of fetal chromosome abnormalities.

机构信息

Paw Print Genetics, Genetic Veterinary Sciences, Inc., Spokane, WA, USA.

出版信息

Expert Rev Mol Diagn. 2013 Jul;13(6):601-11. doi: 10.1586/14737159.2013.811912.

Abstract

The goal of prenatal cytogenetic testing is to provide reassurance to the couple seeking testing for their pregnancy, identify chromosome abnormalities in the fetus, if present, and provide treatments and medical management for affected babies. Cytogenetic analysis of banded chromosomes has been the standard for identifying chromosome abnormalities in the fetus for over 40 years. With chromosome analysis, whole chromosome aneuploidies and large structural rearrangements can be identified. The sequencing of the human genome has provided the resources to develop molecular tools that allow higher resolution observations of human chromosomes. The future holds the promise of sequencing that may identify chromosomal imbalances and deleterious single nucleotide variants. This review will focus on the use of genomic microarrays for the testing and identification of chromosome anomalies in prenatal diagnosis and will discuss the future directions of fetal testing.

摘要

产前细胞遗传学检测的目的是为寻求妊娠检测的夫妇提供安心感,识别胎儿中存在的染色体异常,并为受影响的婴儿提供治疗和医疗管理。带型染色体的细胞遗传学分析已经成为识别胎儿染色体异常的标准方法,已经有超过 40 年的历史。通过染色体分析,可以识别全染色体非整倍体和大的结构重排。人类基因组测序为开发分子工具提供了资源,这些工具可以更精确地观察人类染色体。未来有望通过测序来识别染色体失衡和有害的单核苷酸变异。这篇综述将重点介绍基因组微阵列在产前诊断中检测和识别染色体异常的应用,并讨论胎儿检测的未来方向。

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